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首页> 外文期刊>Journal of biomedical materials research, Part A >Bioactivity and osteoblast responses of novel biomedical nanocomposites of bioactive glass nanofiber filled poly(lactic acid).
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Bioactivity and osteoblast responses of novel biomedical nanocomposites of bioactive glass nanofiber filled poly(lactic acid).

机译:生物活性玻璃纳米纤维填充的聚乳酸的新型生物医学纳米复合材料的生物活性和成骨细胞反应。

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摘要

Biomedical nanocomposites constituted of bioactive ceramic and resorbable polymer have shown promise for the successful regeneration of bone tissues. We developed herein a novel nanocomposite made up of a bioactive glass in a nanofibrous form and a degradable synthetic polymer, poly(lactic acid) (PLA). The glass nanofiber with a bioactive composition was generated via an electrospinning process with an average diameter of approximately 320 nm. The nanofiber was homogenized with PLA solution at various concentrations (up to 35% nanofiber), followed by drying and thermal pressing to produce dense nanocomposites. The nanocomposites showed an internal morphology of uniformly dispersed nanofibers within the PLA matrix. The nanocomposites induced rapid formation of a hydroxycarbonate apatite layer on the surface under a simulated physiological medium. As the amount of bioactive nanofiber increased (from 5 to 25%), the in vitro bioactivity of the nanocomposite was improved. The osteoblast responses to the nanocomposites (compositions with 5 and 25% nanofiber) were assessed in terms of cell proliferation, differentiation, and mineralization. Osteoblasts attached and grew well on the nanocomposites and secreted collagen protein at initial culturing periods. The differentiation of cells, as assessed by the expression of alkaline phosphatase, was significantly improved on the nanocomposites as compared to those on pure PLA. Moreover, the mineralized product by the cells was observed to be significantly higher on the nanocomposites with respect to pure PLA. The newly developed nanocomposite constituted of bioactive nanofiber and degradable polymer is considered as a promising bone regeneration matrix with its excellent bioactivity and osteoblast responses.
机译:由生物活性陶瓷和可吸收聚合物组成的生物医学纳米复合材料已显示出成功再生骨组织的希望。我们在这里开发了一种新型的纳米复合材料,该复合材料由生物活性玻璃以纳米纤维形式和可降解的合成聚合物聚乳酸(PLA)组成。通过电纺丝工艺产生具有生物活性成分的玻璃纳米纤维,其平均直径为约320nm。将纳米纤维与各种浓度的PLA溶液(最高35%纳米纤维)均质化,然后干燥并热压以生产致密的纳米复合材料。纳米复合材料显示了PLA基质内均匀分散的纳米纤维的内部形态。纳米复合材料在模拟的生理介质下诱导在表面上快速形成羟基碳酸盐磷灰石层。随着生物活性纳米纤维的量增加(从5%到25%),纳米复合材料的体外生物活性得到改善。从细胞增殖,分化和矿化方面评估了成骨细胞对纳米复合材料(含5%和25%纳米纤维的复合材料)的反应。成骨细胞在最初的培养阶段附着在纳米复合材料上并生长良好,并分泌胶原蛋白。通过碱性磷酸酶的表达评估,与纯PLA相比,纳米复合材料可显着改善细胞分化。而且,相对于纯PLA,在纳米复合材料上观察到细胞的矿化产物明显更高。由生物活性纳米纤维和可降解聚合物组成的新开发的纳米复合材料被认为具有良好的生物活性和成骨细胞反应能力,是一种有希望的骨再生基质。

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